Biomaterials-design and application
一种体内构建组织工程软骨的方法
一种体内构建组织工程软骨的方法1.组织工程学是一门研究如何在体内构建组织和器官的学科。
Tissue engineering is a discipline that studies how to build tissues and organs in the body.2.目前,体内构建软骨组织的方法已经取得了一定的进展。
Currently, there has been some progress in the methods of building cartilage tissue in the body.3.软骨是一种结缔组织,具有一定的韧性和弹性。
Cartilage is a type of connective tissue that has a certain toughness and elasticity.4.在体内构建软骨组织需要考虑细胞、生物材料和生物力学等因素。
Building cartilage tissue in the body requires consideration of factors such as cells, biomaterials, and biomechanics.5.一种常见的体内构建软骨组织的方法是通过干细胞移植。
A common method for building cartilage tissue in the body is through stem cell transplantation.6.干细胞具有多能性,可以分化成不同类型的细胞,如软骨细胞。
Stem cells have pluripotency and can differentiate into different types of cells, such as chondrocytes.7.干细胞移植需要将干细胞注入到受损的软骨组织中,促进软骨再生。
Stem cell transplantation involves injecting stem cells into damaged cartilage tissue to promote cartilage regeneration.8.另一种体内构建软骨组织的方法是通过生物材料支架的植入。
药学医学生物化学SCI最容易投稿的杂志名单
nternational Journal for Numerical Methods in Engineering此刊最猛,一个月5期,一年4卷,以卷2100页面同样:THE International Journal ADV ANCED Manufacturing Technology也很猛,一个月4期,一年5卷,一卷1800页面2、Journal of Materials Science 一个月2期,一年4卷,一卷1800页面3、Computer Methods in Applied Mechanics and Engineering 一个月2期,一年2卷,一卷4000页面4、Engineering Fracture Mechanics 18期5500页面5、International Journal of Solids and Structures 一月2期,4800页面6、Journal of Materials Processing Technology 一月3期,6300页面7、Journal of Sound and Vibration 一月3期,一年8卷,10300页面8、Materials Science and Engineering: A 一月4期,一年29卷,7500journal of materials processing technology一月2期,一年1卷,6200页面0、ACTA MECHNICS 1200页面0、Applied Physics A: Materials Science & Processing 4000页面0、Applied Mathematics and Optimization 1200页面01、Archive of Applied Mechanics 1200页面02、Communications in Numerical Methods in Engineering 2300页面04、Computational Mechanics1500页面05、Fatigue & Fracture of Engineering Materials & Structures1200页面1、International Journal of Applied Mechanics (IJAM) New创刊,可关注,在新加坡的WORLDSCI2\International Journal of Modeling, Simulation, and Scientific Computing (ijmssc)3、International Journal of Fracture 月刊,一期110页面4、Journal of Engineering Mathematics 月刊,一期110页面5、Journal of Engineering Mechanics 月刊,一期110页面6、Computer-Aided Design 月刊,一期110页面7、Engineering Failure Analysis 共2700页面8、Engineering Structures 2800页面9、Finite Elements in Analysis and Design 800页面6、Journal of Mechanical Science and Technology7、Journal of Structural Engineering8、Materials and Structures 10期1750页面9、Automatica 12期2400页面10、International Journal of Engineering Science 1200页面11、International Journal of Fatigue 2100页面(11月就安排1月)12、International Journal of Impact Engineering 1300页面(11月安排1月)13、International Journal of Mechanical Sciences(1000页面14、International Journal of Non-Linear Mechanics 1300页面15、International Journal of Plasticity 2500页面16、International Journal of Pressure Vessels and Piping 900页面17、Journal of the Mechanics and Physics of Solids 2000页面18、Mechanics of Materials 13400页面19、Mechanics Research Communications 900页面20、Mechanism and Machine Theory 2300页面21、Mechatronics 1500页面22、Simulation Modelling Practice and Theory 1800页面23、Wear 2500页面23、Tribology International 1500页面全名影响因子* 投稿难易一审周期materials science and engineering a-structural materials properties microstructure and processing 1.806 容易超快,一般1-3周materials letters 1.748 容易超快,一般1-3周journal of materials science 1.181 容易超快,一般1-3周journal of materials processing technology 1.143 容易超快,一般1-3周nuclear instruments & methods in physics research section b-beam interactions with materials and atoms 0.999 容易超快,一般1-3周journal of magnetism and magnetic materials 1.283 容易超快,一般1-3周rare metal materials and engineering 0.162 容易很快,2-3周journal of optoelectronics and advanced materials 0.577 容易很快,2-3周materials chemistry and physics 1.799 容易很快,2-3周applied physics a-materials science & processing 1.884 容易很快,2-3周journal of nuclear materials 1.501 容易很快,2-3周materials transactions 0.753 容易较快,3-4周materials research bulletin 1.812 容易较快,3-4周journal of materials science-materials in medicine 1.508 容易较快,3-4周journal of materials research 1.743 容易较快,3-4周computational materials science 1.549 容易较快,3-4周metallurgical and materials transactions a-physical metallurgy and materials science 1.389 容易较快,3-4周optical materials 1.714 容易较快,3-4周journal of materials science-materials in electronics 1.054 容易一般,4-6周inorganic materials 0.455 容易一般,4-6周construction and building materials 0.947 容易一般,4-6周materials characterization 1.225 容易一般,4-6周journal of electronic materials 1.283 容易一般,4-6周journal of inorganic materials 0.37 容易一般,4-6周materials & design 1.107 容易一般,4-6周materials science & engineering c-biomimetic and supramolecular systems 1.812 容易一般,4-6周smart materials & structures 1.743 容易一般,4-6周journal of wuhan university of technology-materials science edition 0.424 容易一般,4-6周materials science and technology 0.894 容易一般,4-6周international journal of materials research 0.819 容易偏慢,6-8周journal of materials science & technology 0.869 容易偏慢,6-8周advanced engineering materials 1.506 容易偏慢,6-8周journal of composite materials 1.034 容易偏慢,6-8周reviews on advanced materials science 0.891 容易偏慢,6-8周materialwissenschaft und werkstofftechnik 0.356 容易偏慢,6-8周bulletin of materials science 0.858 容易偏慢,6-8周archives of metallurgy and materials 0.23 容易偏慢,6-8周materials and structures 0.892 容易偏慢,6-8周materials and manufacturing processes 0.706 容易偏慢,6-8周journal of intelligent material systems and structures 1.293 容易偏慢,6-8周materials science-poland 0.368 容易偏慢,6-8周journal of materials engineering and performance 0.403 容易偏慢,6-8周materials science and engineering b-solid state materials for advanced technology 1.577 较易偏慢,6-8周jom-journal of the minerals metals & materials society 1.485 容易偏慢,6-8周jom-journal of the minerals metals & materials society 1.485 容易偏慢,6-8周materials and corrosion-werkstoffe und korrosion 0.639 容易偏慢,6-8周international journal of materials & product technology 0.157 容易较慢,8周-12周journal of porous materials 0.959 容易较慢,8周-12周macromolecular materials and engineering 1.925 较易较慢,8周-12周fatigue & fracture of engineering materials & structures 0.934 容易较慢,8周-12周science and technology of advanced materials 1.267 容易较慢,8周-12周metallurgical and materials transactions b-process metallurgy and materials processing science 0.798 容易较慢,8周-12周materials world 0.122 容易较慢,8周-12周journal of materials in civil engineering 0.526 容易较慢,8周-12周international journal of refractory metals & hard materials 1.221 容易较慢,8周-12周materials science 0.226 容易较慢,8周-12周advanced materials & processes 0.129 容易较慢,8周-12周ieee transactions on device and materials reliability 1.278 容易较慢,8周-12周materiale plastice 0.873 容易较慢,8周-12周materials performance 0.074 容易较慢,8周-12周indian journal of engineering and materials sciences 0.197 容易较慢,8周-12周modelling and simulation in materials science and engineering 1.388 容易较慢,8周-12周aci materials journal 0.568 容易较慢,8周-12周materials evaluation 0.21 容易较慢,8周-12周mechanics of composite materials 0.453 容易较慢,8周-12周journal of engineering materials and technology-transactions of the asme 0.938 容易较慢,8周-12周bio-medical materials and engineering 0.446 容易较慢,8周-12周mechanics of advanced materials and structures 0.857 容易较慢,8周-12周materials research innovations 0.54 容易12周以上或约稿magnetic resonance materials in physics biology and medicine 1.844 较易12周以上或约稿road materials and pavement design 0.162 容易12周以上或约稿anti-corrosion methods and materials 0.514 容易12周以上或约稿materiales de construccion 0.603 容易12周以上或约稿sensors and materials 0.395 容易12周以上或约稿materials technology 0.288 容易12周以上或约稿journal of new materials for electrochemical systems 0.67 容易12周以上或约稿journal of biomaterials applications 1.635 较易12周以上或约稿journal of thermoplastic composite materials 0.486 容易12周以上或约稿journal of advanced materials 0.14 容易12周以上或约稿materials at high temperatures 0.323 容易12周以上或约稿journal of advanced materials 0.14 容易12周以上或约稿fire and materials 0.96 容易12周以上或约稿advanced composite materials 0.404 容易12周以上或约稿science and engineering of composite materials 0.098 容易12周以上或约稿cmc-computers materials & continua 1.695 较易12周以上或约稿high temperature materials and processes 0.268 容易12周以上或约稿materialprufung 0.123 容易12周以上或约稿mechanics of time-dependent materials 0.95 容易12周以上或约稿informacije midem-journal of microelectronics electronic components and materials 0.154 容易12周以上或约稿applied composite materials 0.712 容易12周以上或约稿journal of sandwich structures & materials 0.646 容易12周以上或约稿high temperature material processes 0.34 容易12周以上或约稿journal of energetic materials 0.516 容易12周以上或约稿materials science in semiconductor processing 1.158 容易12周以上或约稿progress in structural engineering and materials 0.667 容易12周以上或约稿jsme international journal series a-solid mechanics and material engineering 0.291 容易12周以上或约稿journal of computer-aided materials design 0.605 容易12周以上或约稿journal of hazardous materials 2.975 容易超快,一般1-2周chemistry of materials 5.046 较易超快,一般1-2周advanced materials 8.191 较难很快,2-3周journal of materials chemistry 4.646 较易很快,2-3周microporous and mesoporous materials 2.555 容易很快,2-3周acta materialia 3.729 较易很快,2-3周scripta materialia 2.887 容易很快,2-3周biomaterials 6.646 较难很快,2-3周journal of biomedical materials research part a 2.706 容易较快,3-4周advanced functional materials 6.808 较难较快,3-4周diamond and related materials 2.092 容易较快,3-4周journal of biomedical materials research part b-applied biomaterials 2.03 容易一般,4-6周solar energy materials and solar cells 2.788 容易一般,4-6周dental materials 2.941 容易一般,4-6周NA TURE MATERIALS 23.132 极难偏慢,6-8周journal of biomaterials science-polymer edition 2.158 较易偏慢,6-8周mechanics of materials 2.374 较易较慢,8周-12周annual review of materials research 7.947 约稿形式可能是约稿,周期不定materials science & engineering r-reports 12.619 很难可能是约稿,周期不定international materials reviews 3.462 一般12周以上或约稿progress in materials science 18.132 很难可能是约稿,周期不定soft materials 2.519 较易12周以上或约稿critical reviews in solid state and materials sciences 6.3 较难可能是约稿,周期不定progress in crystal growth and characterization of materials 2.129 较易12周以上或约稿current opinion in solid state & materials science 2.976 较易12周以上或约稿。
组织工程多孔支架的快速成形制造
组织工程多孔支架的快速成形制造吴景梅吴若峰*上海大学材料科学与工程学院高分子材料系(201800)email : wujingmei@摘要:针对组织工程中急需具有适当尺寸的孔隙及孔隙率结构的多孔支架的问题,本文引入了目前正在飞速发展的快速成形(RP)技术。
应用该技术可以在短时间内制造出既有精确解剖学形态、又具有适当尺寸的孔隙及孔隙率的三维立体结构支架。
它可以控制载体骨架材料的内部微孔的数量、大小、分布及形状,从而提供给细胞的生存以最适宜的空间和营养条件。
本文对多孔支架的快速成形进行综述并对其应用前景进行了展望。
关键词:组织工程多孔支架快速成形技术1.组织工程概况组织工程是上世纪80年代才提出的一个新概念,它是应用细胞生物学和工程学的原理,研究开发能修复和改善损伤组织结构与功能的生物替代物的一门学科。
组织工程学的基本原理和方法是将在体外培养、扩增的正常组织细胞种植到具有良好生物相容性且在体内可逐步降解吸收的组织工程多孔支架上,形成细胞-支架复合物,细胞在支架上增殖、分化,然后将此复合物植入机体组织病损部位,在体内继续增殖并分泌细胞外基质,伴随着材料的逐步降解,形成新的与自身功能和形态相适应的组织或器官,从而达到修复病损组织或器官的目的。
这种方法将使组织器官缺损的治疗从器官移植进入器官制造的新时代[1-3]。
组织工程材料应具有良好的生物相容性和生物降解性,其中,可降解聚合物的适应面最广[4]。
作为有效的细胞支架,光有材料本身是不够的。
医学研究表明,用作填充和修复的支架材料是细胞附着的基本框架和代谢场所,因此它的形态和功能直接影响其所构成的组织的形态和功能,必须将它制成具有特定形状和孔结构的三维多孔支架。
孔结构取决于致孔方法,而特定的形状则取决于成形方法。
因此组织工程支架的制备应包括致孔和外形成型两个层次,二者必不可少,相互结合才能制得满足要求的支架。
目前组织工程研究重点之一就在于用于支架的生物材料的结构设计与结构和营养条件的最优化及其制造方法研究。
材料类杂志审稿速度
材料类杂志审稿速度全名影响因子* 投稿难易一审周期materials science and engineering a-structural materials properties microstructure and processing 容易超快,一般1-3周(二区,近几年无光催化)materials letters 容易超快,一般1-3周(二区)journal of materials science 容易超快,一般1-3周(二区)journal of materials processing technology 容易超快,一般1-3周(二区,近几年无光催化)nuclear instruments & methods in physics research section b-beam interactions with materials and atoms 容易超快,一般1-3周(三区)journal of magnetism and magnetic materials 容易超快,一般1-3周(三区)rare metal materials and engineering 容易很快,2-3周(四区)journal of optoelectronics and advanced materials 容易很快,2-3周(四区)materials chemistry and physics 容易很快,2-3周(二区,八个月)applied physics a-materials science & processing 容易很快,2-3周(三区)journal of nuclear materials 容易很快,2-3周(二区,无光催化)materials transactions 容易较快,3-4周(四区)materials research bulletin 容易较快,3-4周(三区)journal of materials science-materials in medicine 容易较快,3-4周二区,两篇光催化)journal of materials research 容易较快,3-4周(三区)computational materials science 容易较快,3-4周(三区)metallurgical and materials transactions a-physical metallurgy and materialsscience 容易较快,3-4周(二区,投稿录用比例90%,平均个月的审稿周期)不建议optical materials 容易较快,3-4周(三区)journal of materials science-materials in electronics 容易一般,4-6周(三区)inorganic materials 容易一般,4-6周(四区)construction and building materials 容易一般,4-6周materials characterization 容易一般,4-6周(一区)journal of electronic materials 容易一般,4-6周(三区)journal of inorganic materials 容易一般,4-6周(四区)materials & design 容易一般,4-6周(二区,近几年无光催化)materials science & engineering c-biomimetic and supramolecular systems 容易一般,4-6周二区,无光催化)smart materials & structures 容易一般,4-6周(二区,近几年无光催化)journal of wuhan university of technology-materials science edition 容易一般,4-6周materials science and technology 容易一般,4-6周三区international journal of materials research 容易偏慢,6-8周三区journal of materials science & technology 容易偏慢,6-8周三区)advanced engineering materials 容易偏慢,6-8周(三区)journal of composite materials 容易偏慢,6-8周(三区)reviews on advanced materials science 容易偏慢,6-8周materialwissenschaft und werkstofftechnik 容易偏慢,6-8周bulletin of materials science 容易偏慢,6-8周archives of metallurgy and materials 容易偏慢,6-8周materials and structures 容易偏慢,6-8周materials and manufacturing processes 容易偏慢,6-8周journal of intelligent material systems and structures 容易偏慢,6-8周materials science-poland 容易偏慢,6-8周journal of materials engineering and performance 容易偏慢,6-8周materials science and engineering b-solid state materials for advanced technology 较易偏慢,6-8周jom-journal of the minerals metals & materials society 容易偏慢,6-8周jom-journal of the minerals metals & materials society 容易偏慢,6-8周materials and corrosion-werkstoffe und korrosion 易偏慢,6-8周international journal of materials & product technology 容易较慢,8周-12周journal of porous materials 容易较慢,8周-12周macromolecular materials and engineering 较易较慢,8周-12周fatigue & fracture of engineering materials & structures 容易较慢,8周-12周science and technology of advanced materials 容易较慢,8周-12周metallurgical and materials transactions b-process metallurgy and materialsprocessing science 容易较慢,8周-12周materials world 容易较慢,8周-12周journal of materials in civil engineering 容易较慢,8周-12周international journal of refractory metals & hard materials 容易较慢,8周-12周materials science 容易较慢,8周-12周advanced materials & processes 容易较慢,8周-12周ieee transactions on device and materials reliability 容易较慢,8周-12周materiale plastice 容易较慢,8周-12周materials performance 容易较慢,8周-12周indian journal of engineering and materials sciences 容易较慢,8周-12周modelling and simulation in materials science and engineering 容易较慢,8周-12周aci materials journal 容易较慢,8周-12周materials evaluation 容易较慢,8周-12周mechanics of composite materials 容易较慢,8周-12周journal of engineering materials and technology-transactions of the asme 容易较慢,8周-12周bio-medical materials and engineering 容易较慢,8周-12周mechanics of advanced materials and structures 容易较慢,8周-12周materials research innovations 容易 12周以上或约稿magnetic resonance materials in physics biology and medicine 较易12周以上或约稿road materials and pavement design 容易 12周以上或约稿anti-corrosion methods and materials 容易 12周以上或约稿materiales de construccion 容易 12周以上或约稿sensors and materials 容易 12周以上或约稿materials technology 容易 12周以上或约稿journal of new materials for electrochemical systems 容易12周以上或约稿journal of biomaterials applications 较易 12周以上或约稿journal of thermoplastic composite materials 容易 12周以上或约稿journal of advanced materials 容易 12周以上或约稿materials at high temperatures 容易 12周以上或约稿journal of advanced materials 容易 12周以上或约稿fire and materials 容易 12周以上或约稿advanced composite materials 容易 12周以上或约稿science and engineering of composite materials 容易 12周以上或约稿cmc-computers materials & continua 较易 12周以上或约稿high temperature materials and processes 容易 12周以上或约稿materialprufung 容易 12周以上或约稿mechanics of time-dependent materials 容易 12周以上或约稿informacije midem-journal of microelectronics electronic components and materials容易 12周以上或约稿applied composite materials 容易 12周以上或约稿journal of sandwich structures & materials 容易 12周以上或约稿high temperature material processes 容易 12周以上或约稿journal of energetic materials 容易 12周以上或约稿materials science in semiconductor processing 容易 12周以上或约稿progress in structural engineering and materials 容易 12周以上或约稿jsme international journal series a-solid mechanics and material engineering 容易 12周以上或约稿journal of computer-aided materials design 容易 12周以上或约稿journal of hazardous materials 容易超快,一般1-2周chemistry of materials 较易超快,一般1-2周advanced materials 较难很快,2-3周journal of materials chemistry 较易很快,2-3周microporous and mesoporous materials 容易很快,2-3周三区acta materialia 较易很快,2-3周scripta materialia容易很快,2-3周biomaterials 较难很快,2-3周journal of biomedical materials research part a 容易较快,3-4周advanced functional materials 较难较快,3-4周diamond and related materials 容易较快,3-4周journal of biomedical materials research part b-applied biomaterials 容易一般,4-6周慢solar energy materials and solar cells 容易一般,4-6周dental materials 容易一般,4-6周NATURE MATERIALS 极难偏慢,6-8周journal of biomaterials science-polymer edition 较易偏慢,6-8周mechanics of materials 较易较慢,8周-12周annual review of materials research 约稿形式可能是约稿,周期不定materials science & engineering r-reports 很难可能是约稿,周期不定international materials reviews 一般 12周以上或约稿progress in materials science 很难可能是约稿,周期不定soft materials 较易 12周以上或约稿critical reviews in solid state and materials sciences 较难可能是约稿,周期不定progress in crystal growth and characterization of materials 较易12周以上或约稿current opinion in solid state & materials science 较易 12周以上或约稿。
材料科学与工程专业英语14-Unit 22 biomaterials
The FDA regulates 100,000 different products that represent at least 1,700 Different Types of Biomedical Devices.
Words
• • • • • • • • •
Biomaterial:生物材料 Physiologically:生理学地 Suture:缝合线 Catheter:导尿管 导管 Pharmacologically:药理学地 Biological material: 生物来源材料 Artery:动脉 Artificial material:人造材料 人工材料 Artificial limb:假肢
Words
biomaterials
Interaction Biological materials Implant materials
Words • Biocompatibility:生物相容性 • Recipient:接受者 • Competency:能力 • Femur:股骨 • Nontoxic:无毒的 • Nonallergenic:不会引起过敏的 • Nonimmunogenic:不产生免疫排斥的 • Noncarcinogenic:不致癌的 • Degradation:降解 Question
RP Crawford, CE Cann and TM Keaveny.Bone, volume 33,pp 744-750, 2003
Words
• • • • •
Microsphere:微球 Encapsulation:包封 Dosage:剂量 Sensor:传感器 Probe:探针
Journal of Colloid and Interface Science, Volume 376, Issue 1, 15 June 2012, Pages 97-106
描述我的专业的英语作文80词
描述我的专业的英语作文80词英文回答:My academic background in biomedical engineering has provided me with a solid foundation in the application of engineering principles to solve problems in medicine. Through coursework in biomaterials, biomechanics, and medical device design, I have developed a comprehensive understanding of the human body and its interactions with medical devices and treatments. My research experience in tissue engineering and biocompatibility has further honed my ability to apply scientific and engineering methods to address unmet clinical needs. I am confident that my technical expertise and passion for improving patient outcomes will make me a valuable asset to any research team or medical organization.中文回答:生物医学工程专业的学术背景为我奠定了将工程原理应用于解决医学问题的坚实基础。
通过在生物材料、生物力学和医疗器械设计方面的课程学习,我对人体及其与医疗器械和治疗的相互作用有了全面理解。
大学各专业名称英文翻译(一)——工学_ENGINEERING
大学各专业名称英文翻译(一)——工学ENGINEERING课程中文名称课程英文名称高等数理方法Advanced Mathematical Method弹塑性力学Elastic-Plastic Mechanics板壳理论Theory of Plate and Shell高等工程力学Advanced Engineering Mechanics板壳非线性力学Nonlinear Mechanics of Plate and Shell复合材料结构力学Structural Mechanics of Composite Material弹性元件的理论及设计Theory and Design of Elastic Element非线性振动Nonlinear Vibration高等土力学Advanced Soil Mechanics分析力学Analytic Mechanics随机振动Random Vibration数值分析Numerical Analysis基础工程计算与分析Calculation and Analysis of Founda tion Engineering结构动力学Structural Dynamics实验力学Laboratory Mechanics损伤与断裂Damage and Fracture小波分析Wavelet Analysis有限元与边界元分析方法Analytical Method of Finite Element and Boundary Element最优化设计方法Optimal Design Method弹性力学Elastic Mechanics高层建筑基础Tall Building Foundation动力学Dynanics土的本构关系Soil Constitutive Relation数学建模Mathematical Modeling现代通信理论与技术Emerging Communications Theory and Technology数字信号处理Digital Signal Processing网络理论与多媒体技术Multi-media and Network Technology医用电子学Electronics for Medicine计算微电子学Computational Microelectronics集成电路材料和系统电子学Material and System Electronics for In tegrated Circuits网络集成与大型数据库Computer Network Integrating Technology and Large scale Database 现代数字系统Modern Digital System微机应用系统设计Microcomputer Application Design计算机网络新技术Modern Computer Network Technologies网络信息系统Network Information System图像传输与处理Image Transmission and Processing图像编码理论Theory of Image Coding遥感技术Remote Sensing Techniques虚拟仪器系统设计Design of Virtual Instrument System生物医学信号处理技术Signal Processing for Biology and Medicine光纤光学Fiber OpticsVLSI的EDA技术EDA Techniques for VLSI电子系统的ASIC技术ASIC Design TechnologiesVLSI技术与检测方法VLSI Techniques & Its Examination专题阅读或专题研究The Special Subject Study信息论Information Theory半导体物理学Semiconductor Physics通信原理Principle of Communication现代数理逻辑Modern Mathematical Logic算法分析与设计Analysis and Design of Algorithms高级计算机网络Advanced Computer Networks高级软件工程Advanced Software Engineering数字图像处理Digital Image Processing知识工程原理Principles of Knowledge Engineering面向对象程序设计Object-Oriented Programming形式语言与自动机Formal Languages and Automata人工智能程序设计Artificial Intelligence Programming软件质量与测试Software Quality and Testing大型数据库原理与高级开发技术Principles of Large-Scale Data-Bas e and Advanced Development Technology自然智能与人工智能Natural Intelligence and Artificial Intelligence Unix操作系统分析Analysis of Unix System计算机图形学Computer GraphicsInternet与Intranet技术Internet and Intranet Technology多媒体技术Multimedia Technology数据仓库技术与联机分析处理Data Warehouse and OLAP程序设计方法学Methodology of Programming计算机信息保密与安全Secrecy and Security of Computer Information电子商务Electronic Commerce分布式系统与分布式处理Distributed Systems and Distributed Processing并行处理与并行程序设计Parallel Processing and Parallel Programming模糊信息处理技术Fuzzy Information Processing Technology人工神经网络及应用Artificial Intelligence and Its Applications Unix编程环境Unix Programming Environment计算机视觉Computer Vision高级管理信息系统Advanced Management Information Systems信息系统综合集成理论及方法Theory and Methodology of Information n System Integration计算机科学研究新进展Advances in Computer Science离散数学Discrete Mathematics操作系统Operating System数据库原理Principles of Database编译原理Principles of Compiler程序设计语言Programming Language数据结构Data Structure计算机科学中的逻辑学Logic in Computer Science面向对象系统分析与设计Object-Oriented System Analysis and Design高等数值分析Advanced Numeric Analysis人工智能技术Artificial Intelligence Technology软计算理论及应用Theory and Application of Soft-Computing逻辑程序设计与专家系统Logic Programming and Expert Systems模式识别Pattern Recognition软件测试技术Software Testing Technology高级计算机网络与集成技术Advanced Computer Networks and Integration Technology 语音信号处理Speech Signal Processing系统分析与软件工具System Analysis and Software Tools计算机仿真Computer Simulation计算机控制Computer Control图像通信技术Image Communication Technology人工神经网络及应用Artificial Intelligence and Its Applications计算机技术研究新进展Advances in Computer Technology环境生物学Environmental Biology水环境生态学模型Models of Water Quality环境化学Environmental Chemistry环境生物技术Environmental Biotechnology水域生态学Aquatic Ecology环境工程Environmental Engineering环境科学研究方法Study Methodology of Environmental Science藻类生理生态学Ecological Physiology in Algae水生动物生理生态学Physiological Ecology of Aquatic Animal专业文献综述Review on Special Information废水处理与回用Sewage Disposal and Re-use生物医学材料学及实验Biomaterials and Experiments现代测试分析Modern Testing Technology and Methods生物材料结构与性能Structures and Properties of Biomaterials计算机基础Computer Basis医学信息学Medical Informatics计算机汇编语言Computer Assembly Language学科前沿讲座Lectures on Frontiers of the Discipline组织工程学Tissue Engineering生物医学工程概论Introduction to Biomedical Engineering高等生物化学Advanced Biochemistry光学与统计物理Optics and Statistical Physics图像分析Image Treatment数据处理分析与建模Data Analysis and Constituting Model高级数据库Advanced Database计算机网络Computer Network多媒体技术Technology of Multimedia软件工程Software Engineering药物化学Pharmaceutical Chemistry功能高分子Functional Polymer InternetIntranet程序设计方法学Methods of Programming InternetIntranet高分子化学与物理Polymeric Chemistry and Physics医学电子学Medical Electronics现代仪器分析Modern Instrumental Analysis仪器分析实验Instrumental Analysis Experiment食品添加剂Food Additives Technology高级食品化学Advanced Food Chemistry食品酶学Food Enzymology现代科学前沿选论Literature on Advances of Modern Science波谱学Spectroscopy波谱学实验Spectroscopic Experiment食品贮运与包装Food Packaging液晶化学Liquid Crystal Chemistry高等有机化学Advanced organic Chemistry功能性食品Function Foods食品营养与卫生学Food Nutrition and Hygiene食品生物技术Food Biotechnology食品研究与开发Food Research and Development有机合成化学Synthetic organic Chemistry食品分离技术Food Separation Technique精细化工装备Refinery Chemical Equipment食品包装原理Principle of Food Packaging表面活性剂化学及应用Chemistry and Application of Surfactant天然产物研究与开发Research and Development of Natural Products 食品工艺学Food Technology生物化学Biochemistry食品分析Food Analysis食品机械与设备Food Machinery and Equipment。
biomaterials advances issn -回复
biomaterials advances issn -回复Biomaterials Advances: Understanding the InnovationsBiomaterials advances ISSN is a unique identifier that is given to a particular scientific journal. The topics that are usually discussed in this journal are related to biomaterials usage and its relevant advancements. In this article, we will discuss in-depth what biomaterials are, how they are used, what the biomaterials advances ISSN is, and what kind of topics are covered in this scientific journal.What are Biomaterials?Biomaterials refer to substances that are engineered and used in medical implants or other medical devices. These substances can be naturally occurring or man-made. The purpose of using biomaterials is to promote the growth of new tissues and organs, repair damaged tissues, or replace missing tissues. Biomaterials can also be used to deliver medication to certain parts of the body.Examples of biomaterials are metals, ceramics, polymers, and composites. In most cases, the specific properties of biomaterialsare engineered to elicit a specific response from the body, such as providing suitable mechanical properties, biocompatibility, or the ability to degrade naturally.Understanding the Usage of BiomaterialsBiomaterials in medical devices are used in a wide range of applications, including surgical implants, prosthetics, drug delivery systems, and diagnostic devices. They are also used in dental implants, medical adhesives, and contact lenses. In some cases, biomaterials can also be used to make clothing and accessories, such as shoes, watches, and jewelry.The biomaterials used in medical applications are typically made from biocompatible materials that are non-toxic and do not cause harm to the body. They are also designed to provide adequate mechanical properties based on the intended application.What is Biomaterials Advances ISSN?Biomaterials Advances ISSN is a scientific journal that focuses on the latest advances in the field of biomaterials. This journalpublishes peer-reviewed articles that are related to the development, characterization, and application of biomaterials.The topics that are covered in the Biomaterials Advances Journal include but are not limited to:1. Materials engineering and characterization2. Biocompatibility and toxicity studies3. Materials processing and manufacturing4. Regenerative medicine and tissue engineering5. Biomaterials design and implantation studies6. Drug delivery and diagnostics7. Bioactive materials and coatings8. Synthesis and biosynthesis of biomaterials9. Biomaterials in oral and dental applications10. Nano-biomaterials and nanomedicine11. Engineering and fabrication of biomaterials12. Bio-inspired materials and design13. Biomimetics and bioengineeringAdvancement in biomaterials research has led to significant breakthroughs in the medical field. The research and development of biomaterials have led to the creation of new medical devices, artificial organs, and prosthetics that change the lives of many people around the world.ConclusionIn conclusion, biomaterials are an essential aspect of modern medicine. The Biomaterials Advances ISSN is an important scientific journal that provides information to researchers, academicians, andprofessionals on the latest developments in biomaterials. The journal covers various topics on materials engineering, characterization, biocompatibility, toxicity studies, drug delivery, diagnostics, and much more. With ever-improving advancement in biomaterials research, we can expect many more innovative medical devices and treatments that improve the quality of human life.。
Biomedical Materials and Engineering
Biomedical Materials and EngineeringBiomedical engineering is a multidisciplinary field that combines the principles of engineering, biology, and medicine to design and develop solutions for healthcare problems. Biomedical materials are essential components of biomedical engineering that serve as the building blocks for medical devices, implants, and tissue engineering scaffolds. Biomedical materials and engineering play a crucial role in advancing healthcare innovation.Biomedical materials can be classified into two categories: natural and synthetic. Natural materials are derived from biological sources, such as collagen, chitosan, and silk. These materials have excellent biocompatibility, biodegradability, and bioactive properties, making them ideal for tissue engineering and regenerative medicine applications. Synthetic materials, on the other hand, are man-made and include polymers, ceramics, and metals. These materials can be tailored to achieve specific mechanical, chemical, and biological properties, making them ideal for medical devices and implants.Biomedical engineering focuses on designing and developing medical devices that improve patient outcomes and quality of life. Medical devices, such as pacemakers, artificial joints, and heart valves, are examples of how biomedical engineering has revolutionized healthcare. Biomedical materials play a key role in the design and development of medical devices that are safe, effective, and reliable. Polymeric materials, such as polyurethane and silicone, are commonly used in medical devices due to their biocompatibility, flexibility, and durability.Tissue engineering is another area where biomedical materials and engineering have made significant advances. Tissue engineering involves creating functional tissues for replacement or repair of damaged or diseased tissues and organs. Tissue engineering scaffolds are typically made from natural materials that mimic the extracellular matrix and provide a template for cell attachment, growth, and differentiation. Biomedical materials, such as collagen and hyaluronic acid, have been extensively studied for tissueengineering applications and have shown promising results in regenerating tissues such as skin, bone, and cartilage.Nanotechnology is a rapidly growing area of biomedical engineering that has enormous potential for improving healthcare. Nanoparticles, nanotubes, and nanofibers offer unique properties that can be tailored for various biomedical applications. For example, nanoparticles can be used as drug carriers to deliver drugs to specific targets in the body, while nanofibers can be used as tissue engineering scaffolds. Biomedical materials made from nanotechnology have the potential to revolutionize drug delivery, cancer treatment, and regenerative medicine.Biomaterials play a critical role in ensuring the safety and efficacy of medical devices and implants. Before a medical device or implant is approved for use, it undergoes rigorous testing to ensure that it meets safety and efficacy standards. Biomedical materials are tested for biocompatibility, degradation, mechanical properties, and durability. In addition, regulatory agencies such as the U.S. Food and Drug Administration (FDA) provide guidelines for the development, testing, and approval of medical devices and implants.In conclusion, biomedical materials and engineering have made significant contributions to healthcare innovation. Biomedical materials are essential components of medical devices, tissue engineering scaffolds, and regenerative medicine. Biomedical engineering has revolutionized healthcare by designing and developing medical devices that improve patient outcomes and quality of life. Advances in nanotechnology have enormous potential for improving drug delivery, cancer treatment, and regenerative medicine. Biomedical materials and engineering play a crucial role in ensuring the safety and efficacy of medical devices and implants. It is an exciting time for biomedical engineering and materials science, and the possibilities for future innovation are endless.。
生物材料课程教学大纲-上海交通大学生物医学工程学院
课程教学大纲(course syllabus)
*学习目标 (Learning Outcomes)
1. 掌握生物材料的定义、特点和要求。[a,f,h,j] 2. 了解生物材料种类、特性及应用目标。[a,c,j] 3. 掌握生物相容性概念,了解如何评价生物相容性。[a,j] 4. 了解组织工程材料基本要求及人造器官实例。[a,c,i] 5. 了解药物和基因载体材料的基本性能和应用实例。[a,j] 6. 了解仿生智能生物材料和生物材料的发展趋势。[a,i,j] 7. 学习纳米生物材料、应用及安全性。[a,h,j] 8. 在分组报告中获得团队合作的经验。[d] 9. 在课堂讨论中提高口头表述能力。[a,c,j] 10. 能够检索引用跟踪生物材料的新进展。[a,j]
polymers. Bicompatibility and properties and characterization of biomaterials. The principle
of tissue engineering and artificial organs. Bimaterials as drug carriers and gene carriers.
纳米生物材料进行介绍,了解纳米材料在生物医学上可能发挥的作用以及潜在的安全
性问题。最后结合生物材料领域的最新进展,引导学生查阅文献,让学生自主讲解讨论
生物材料的最新动向。
本课程对于生物医学工程其他专业课程也有辅助作用:如医学影像造影剂载体、干细胞和
组织再生、诊断治疗 MEMS 材料等。课程的教学目标是培养学生的专业兴趣,引导学生掌握
参考书目:
1. 生物材料科学医用材料导论(第 2 版)(影印版)(国外大学优秀教材材料科学与
工程系列) : 清华大学出版社 2006。
材料科学与工程专业解析
材料科学与工程专业解析材料科学与工程是最近美国研究生申请的热门专业,其申请人数虽然不及电气工程、计算机科学等科目,但申请人数一直在上升,今天小编就为大家介绍有关材料科学工程专业申请的相关信息,希望对大家的申请能有所帮助。
学科简介材料科学与工程(Materials Science and Engineering)是一个多学科领域,涉及物质的性质及其在各个科学和工程领域的应用。
它是研究材料的制备或加工工艺、材料的微观结构与材料宏观性能三者之间的相互关系的科学。
涉及的理论包括固体物理学,材料化学,应用物理和化学,以及化学工程,机械工程,土木工程和电机工程。
与电子工程结合,则衍生出电子材料,与机械结合则衍生出结构材料,与生物学结合则衍生出生物材料等等。
随着近年来媒体将注意力大量集中在纳米科学和纳米技术上,材料科学在许多大学被推到了最前沿。
它也是法医工程和失效分析中的一个重要组成部分。
学科分支材料科学可按多种方法进行分类。
每个学校的研究侧重点也各有不同,下面我们为大家介绍几个常见的分支学科。
具体分支方向及研究内容请到申请学校官网查询。
高分子材料 Polymer Materials主要研究导橡胶、塑料、纤维、涂料、胶粘剂和高分子基复合材料以及这些材料的制备、表征、加工、形貌、特性。
近些年高分子材料发展迅速应用到生活中的各个领域,高分子材料发展时间不长,研究成果多,申请难度比较大,专业的回报率还是比较高的。
高分子材料的应用十分广泛,比如轮胎、液晶电视、甚至防弹衣、航天飞机上都能用到高分子材料。
值得注意的是:化学工程专业下也有高分子方向,化学背景的学生有相关的课程背景也是可以申请材料专业下高分子方向的。
金属材料 Metallic Materials金属材料是最传统的材料,如钢铁材料、非晶态合金、结构金属材料、功能金属,它们的微观结构对材料力学和物理性能影响,合金中不同成份比例对材料硬度、韧性、拉伸强度的影响。
现在对于金属材料的研究多与纳米材料以及复合材料相结合。
全球SCI收录材料期刊影响因子排名
全球SCI收录材料期刊影响因子排名Nature自然31。
434Science科学28。
103Nature Material自然(材料)23。
132Nature Nanotechnology自然(纳米技术)20。
571Progress in Materials Science材料科学进展18。
132Nature Physics自然(物理)16.821Progress in Polymer Science聚合物科学进展16.819Surface Science Reports表面科学报告12。
808Materials Science & Engineering R—reports材料科学与工程报告12。
619 Angewandte Chemie—International Edition应用化学国际版10.879Nano Letters纳米快报10。
371Advanced Materials先进材料8。
191Journal of the American Chemical Society美国化学会志8.091Annual Review of Materials Research材料研究年度评论7。
947Physical Review Letters物理评论快报7。
180Advanced Functional Materials先进功能材料6.808Advances in Polymer Science聚合物科学发展6。
802Biomaterials生物材料6.646Small微观?6.525Progress in Surface Science表面科学进展5。
429Chemical Communications化学通信5。
34MRS Bulletin材料研究学会(美国)公告5.290Chemistry of Materials材料化学5。
046Advances in Catalysis先进催化4.812Journal of Materials Chemistry材料化学杂志4。
生物医用材料课程教学大纲-上海交通大学-材料科学与工程学院
Principles of Chemistry, Materials Chemistry, Materials Physics, Fundamentals of
Materials Science and Engineering
DOU Hongjing
课程网址
PEI Jia
(Course Webpage)
实例 理解可控 释药系统 的概念、 机理及应 用。了解 药物传输 用生物材 料。能够 根据要求 设计基本 的可控释 药系统。 掌握生物 诊断材料 分类及应 用。了解 生物材料 在领域的
应用
作业+课堂 提问
作业+课堂 提问
课堂提问
平时作业(10%),小测验(1 次,15%+15%),期末考试(60%) Assignments(10%) + Quizzes (15%+15%)+ Final exam (60%)
生物材料的基本物理、化学和力学性能;生物材料的分类与功能。本门课程的学
习将培养设计新型生物材料与生物材料评估的知识与能力。
*课程简介(Description)
This course provides an introduction to the world of biomaterials, linking the fundamental properties of metals, polymers, ceramics and natural biomaterials to the unique advantages and limitations surrounding their biomedical applications. Clinical concerns such as sterilization, surface modification, cell-biomaterial interactions, drug delivery systems, biomedical diagnosis, and tissue engineering are discussed in detail, giving students practical insight into the real-world challenges associated with biomaterials engineering. Key definitions, equations and concepts are concisely summarised, allowing students to quickly and easily identify the most important information. The course covers: surface chemistry and
人体骨肌系统的整体生物力学建模与仿真分析研究中国力学虚拟人系统集成方法与实现
人体骨肌系统的整体生物力学建模与仿真分析研究中国力学虚拟人系统集成方法与实现一、本文概述Overview of this article随着生物医学工程、计算机仿真技术及力学研究的不断深入,人体骨肌系统的生物力学建模与仿真分析在医疗、康复、体育训练及人体工程学等领域的应用越来越广泛。
其中,中国力学虚拟人系统作为一种集成多源数据、高精度人体模型与仿真技术的创新平台,为深入研究和理解人体骨肌系统的生物力学特性提供了强大的工具。
本文旨在探讨中国力学虚拟人系统集成方法与实现,通过对人体骨肌系统的整体生物力学建模与仿真分析,为相关领域的研究与实践提供理论支持和技术指导。
With the continuous deepening of biomedical engineering, computer simulation technology, and mechanical research, the biomechanical modeling and simulation analysis of the human skeletal muscle system are increasingly widely used in fields such as medicine, rehabilitation, sports training, and ergonomics. Among them, the Chinese Mechanical Virtual HumanSystem, as an innovative platform that integrates multi-source data, high-precision human models and simulation technology, provides a powerful tool for in-depth research and understanding of the biomechanical characteristics of the human skeletal muscle system. This article aims to explore the integration method and implementation of Chinese mechanical virtual human system, and provide theoretical support and technical guidance for research and practice in related fields through the overall biomechanical modeling and simulation analysis of the human skeletal muscle system.本文首先介绍了人体骨肌系统生物力学建模的基本原理和方法,包括骨骼结构、肌肉力学特性及关节运动学等方面的建模技术。
2015级生物医学工程专业培养方案(本科生)-中山大学工学院
工学院生物医学工程专业培养方案(2015)一、培养目标生物医学工程是一门新兴的、目前正处在快速发展时期的交叉学科。
它通过生物、医学、材料、电子、信息等领域的交叉与融合,利用现代工程技术手段,解决医学中的预防、检测诊断、治疗和康复等问题。
中山大学生物医学工程专业致力于培养掌握生物医学工程和其他相关学科的基础理论,具有综合应用多学科知识和方法解决医学相关领域实际问题的能力,在生物材料与组织工程、医疗仪器等相关领域从事科学研究与应用开发的高素质医工复合型人才。
二、培养规格和要求1. 要求学生掌握生物医学工程、电子技术、计算机技术和现代生物技术的基本理论和基本知识,一方面通过理论学习和教学实验,受到工程技术方面的良好训练;另一方面了解临床中的实际问题和需求,毕业后掌握综合应用所学知识和方法解决临床中问题的能力,具备在医疗产业(包括生物材料与组织工程、医疗仪器、医药和公共卫生)等相关领域从事科学研究和应用开发的素质和技能。
2. 与国际化接轨,要求学生掌握的专业知识和英语能力达到国际知名大学标准。
3. 具有良好的综合素质和健康的体魄。
三、授予学位与修业年限按照我校四年制生物医学工程专业教学计划的要求修满171学分,通过毕业设计考核,且符合中华人民共和国学位条例规定,经我校学位委员会审核批准,授予工学学士学位。
四、毕业总学分及课内总学时五、专业基础课程(须与教学计划所列专业基础课程一致)专业基础课程(一)学科大类基础课程:高等数学一(理工Ⅰ)、线性代数、工程制图、前沿讲座、计算机算法语言、计算机算法语言上机实验、普通物理I、物理实验、工程力学(二)专业基础课程:普通化学、电路原理、人体结构学、金工实习、认识实习、医学生理学、细胞生物学、概率与数理统计、生产实习、毕业设计六、专业核心课程(须与教学计划所列专业核心课程一致)生物医学工程专业根据医疗产业等相关需求分成两个方向: 医疗仪器和生物材料工程方向,学生进入大学二年级时选择专业方向。
全球材料类SCI收录期刊影响因子排名-投稿必备
全球材料类SCI 收录期刊影响因子排名期刊英文名 中文名 影响因子 Nature 自然 31.434 Scienee 科学 28.103Nature Material 自然(材料)23.132Nature Nano tech no logy自然(纳米技术)20.571Progress in Materials ScienceProgress in Polymer Science聚合物科学进展16.819Nature Physics 自然(物理)16.821Surface Scie nee Reports 表面科学报告 12.808Materials Science & Engin eeri ng R-reports 材料科学与工程报告 12.619 An gewa ndte Chemie-I ntern atio nal Editi on 应用化学国际版10.879Na no Letters 纳米快报 10.371 Advaneed Materials 先进材料 8.191Journal of the America n Chemical Society 美国化学会志8. Annual Review of Materials Research 材料研究年度评论 7.947 Physical Review Letters 物理评论快报 7. Adva need FunctionalMaterials 先进功能材料6.808 Adva nces in Polymer Scie nee 聚合物科学发展 6.802Biomaterials 生物材料 6.646 Small 微观? 6.525材料科学进展18.132Progress in Surface Scie nee 表面科学进展5.429Chemical Communications 化学通信5.34MRS Bulletin 材料研究学会(美国)公告5.290Chemistry of Materials 材料化学5.Advances in Catalysis 先进催化4.812Journal of Materials Chemistry 材料化学杂志4.646Carbon 碳4.373Crystal Growth & Desig n 晶体生长与设计4.215Electrochemistry Communications 电化学通讯4.194The Journal of Physical Chemistry B 物理化学杂志,B辑:材料、表面、界面与生物物理4.Inorganic Chemistry 有机化学4.147Langmuir 朗缪尔4.Physical Chemistry Chemical Physics 物理化学4.064In ternatio nal Journal of Plasticity 塑性国际杂志3.875Acta Materialia 材料学报3.729Applied Physics Letters 应用物理快报3.726Journal of power sources 电源技术3.477Journal of the Mecha nics and Physics of Solids 固体力学与固体物理学杂志 3.467 International Materials Reviews 国际材料评论3.462Na notech nology 纳米技术3.446Journal of Applied Crystallography 应用结晶学3.212Journal of the American Ceramic Society 美国瓷学会杂志2.101Microscopy and Microa nalysis 2.992Current Opinion in Solid State & Materials Science Scripta Materialia材料快报 2.887The Jour nal of Physical Chemistry A Biometals 生物金属 2.801 Ultramicroscopy超显微术 2.629Microporous and Mesoporous Materials Composites Science and Tech no logy Curre nt Na noscie nee 当代纳米科学 Journal of the Electrochemical Society Solid State Ionics固体离子 2.425IEEE Journal of Qua ntum Electro nicsIEEE 量子电子学杂志 2.413Mechanics of Materials材料力学 2.374Journal of nan oparticle research 纳米颗粒研究 2.299CORROSION SCIENCE 腐蚀科学 2.293 Journal of Applied Physics应用物理杂志 2.201Journal of Biomaterials Scie nce-Polymer Editio n 生物材料科学一聚合物版 2.158IEEE Tran sacti ons on Na notech nologylEEE纳米学报 2.154Progress in Crystal Growth and Characterization of Materials 晶体生长和材料表征进展 2.129Journal of Physics D-Applied Physics物理杂志 D ------ 应用物理 2.104固态和材料科学的动态 2.976物理化学杂志,A 辑2.871多和类材料2.555 复合材料科学与技术 2.533 2.437电化学界2.437Diam ond and Related Materials金刚及相关材料2.092Journal of Chemical & En gi neeri ng Data 化学和工程资料杂志2.In termetallics 金属间化合物2.034Electrochemical and Solid State Letters 固体电化学快报2.001Sy nthetic Metals 合成金属1.962Composites Part A-Applied Scienee and Manufacturing 复合材料A 应用科学与制备1.951Journal of Nan oscie nee and Nano tech no logy 纳米科学和纳米技术 1.929Journal of Solid State Chemistry 固体化学1.91Journal of Physics: Co nde nsed Matter 物理学学报:凝聚态物质 1.9Urnal of Bioactive and Compatible Polymer 生物活性与兼容性聚合物杂志 1.896In ternatio nal Journal of Heat and Mass Tran sfer 传热与传质1.894Applied Physics A-Materials Scienee & Processing 应用物理A —材料科学和进展 1.884 Thin Solid Films 固体薄膜1.884Surface & Coat ings Techn ology 表面与涂层技术1.860Materials Science & Engin eeri ng C-Biomimetic and Supramolecular Systems 材料科学与工程C —仿生与超分子系统 1.812Materials Research Bullet in 材料研究公告1.812In ternatio nal Journal of Solids and Structures 固体与结构1.809Materials Science and Engin eeri ng A-Structural Materials Properties Microst 材料科学和工程A —结构材料的性能、组织与加工 1.806Journal of the American Ceramic Society 美国瓷学会杂志2.101Materials Chemistry and Physics 材料化学与物理1.799Powder Techn ology 粉末技术1.766Materials Letters 材料快报1.748Journal of Materials Research 材料研究杂志1.743Smart Materials & Structures 智能材料与结构 1.743Solid State Scie nces 固体科学1.742Polymer Testi ng 聚合物测试1.736Nan oscale Research Letters 纳米研究快报1.731Surface Scie nee 表面科学1.731Optical Materials 光学材料1.714In ternatio nal Journal of Thermal Scie nces 热科学1.683 Thermochimica Acta 热化学学报1.659Journal of Biomaterials Applicati ons 生物材料应用杂志 1.635 Jour nal of Thermal An alysis and Calorimetry1.63Journal of Solid State Electrochemistry 固体电化学杂志1.597 Journal of the European Ceramic Society 欧洲瓷学会杂志1.58Materials Science and Engin eeri ng B-Solid State Materials for Adva need Tech 科学与工程B —先进技术用固体材料 1.577Applied Surface Scie nee 应用表面科学1.576Europea n Physical Jour nal BSolid State Communi cati onsIntern ati onal Jour nal of Fatigue 材料欧洲物理杂志B1.568固体物理通信1.557疲劳国际杂志1.556Computational Materials Science 计算材料科学1.549Philosophical Magaz ine A-Physics of Conden sed Matter Structure Defects andCeme nt and Con crete Research Philosophical Magazi ne Letters哲学杂志(包括材料)1.548Curre nt Applied Physics 当代应用物理 1.526 Jour nal of Alloys and Compo unds Wear 磨损 1.509Journal of Materials Scie nce-Materials in Medici ne Adva need En gi neeri ng Materials 先进工程材料 1.506 Journal of Nuclear Materials核材料杂志 1.501Intern ati on al J ournal of Applied Ceramic Tech no logy 应用瓷技术 1.488 Chemical Vapor Depositi on化学气相沉积 1.483COMPOSITES PART B-ENGINEERING 复合材料 B 工程 1.481Composite Structures复合材料结构 1.454Journal of Non-crystalli ne Solids非晶固体杂志 1.449Journal of Vacuum Scie nee & Techn ology B 真空科学与技术杂志 B1.445 Semico nductor Scie nee and Tech no logy 半导体科学与技术1.434Journal of SOL-GEL Scie nee and TEch no logy 溶胶凝胶科学与技术杂志1.433Scie nee and Tech nology of Weldi ng and Joi ning焊接科学与技术 1.426Metallurgical and Materials Tran sact ions A-Physical Metallurgy and Material 冶金与材料会刊A ――物理冶金和材料1.389Modelli ng and Simulation in Materials Scie nee and Engin eeri ng 材料科学与工程中的建模与模拟1.388水泥与混凝土研究 1.549 合金和化合物杂志 1.51材料科学杂志一医用材料1.508Journal of Materials Scie nee材料科学杂志1.哲学杂志A 凝聚态物质结构缺陷和机械性能物理 1.384Philosophical Magaz ine 哲学杂志1.384 Ceamics Intern ati onal 国际瓷1.369 Oxidation of Metals材料氧化1.359Modern Physics Letters A现代物理快报 A1.334Ceme nt & Con crete Composites水泥与混凝土复合材料 1.312Mecha nical Properties Jour nal of In tellige nt Material Systems and Structures 智能材料系统与结构 1.293Jour nal of Magn etism and Magn etic Materials 磁学与磁性材料杂志 1.283Journal of Electr onic Materials 电子材料杂志 1.283 Surface and In terface An alysis表面与界面分析1.272Science and Tech no logy of Adva need Materials1.267 Jour nal of Computatio nal and Theoretical Nano scie nee 计算与理论纳米科学 1.256 IEEE TRANSACTIONS ON ADVANCED PACKAGINGIEEE 高级封装会刊1.253Materials Characterizatio n材料表征 1.225Intern ati onal Journal of Refractory Metals & Hard Materials 耐火金属和硬质材料国际 杂志1.221Physica Status solidi A-Applied Research 固态物理A ——应用研究 1.205PHASE TRANSITIONS 相变 1.201 Jour nal of Thermal Spray Tech no logy 热喷涂技术杂志1.2Intern ati onal Jour nal of Nano tech no logy 纳米工程1.184Journal of Vacuum Scie nee & Techno logy A-VACUUM Surfaces and Films真空科学与技术A真空表面和薄膜1.PHYSICA STATUS SOLIDI B-BASIC RESEARCH 固态物理B —基础研究1.166 MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING 半导体加工的材料科学1.158In ternatio nal Journal of Fracture 断裂学报1.147Journal of Materials Processi ng Techno logy 材料加工技术杂志1.143Metals and Materials In ternatio nal 国际金属及材料1.IEEE TRANSACTIONS ON MAGNETICSIEEE 磁学会刊1.129Vacuum 真空1.114Journal of Applied Electrochemistry 应用电化学1.111Materials & Desig n 材料与设计1.107JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS 固体物理与化学杂志1.103Journal of Experime ntal Na noscie nee 实验纳米科学1.103POLYMER COMPOSITES 聚合物复合材料1.054Journal of Materials Scie nce-Materials in Electro nics 材料科学杂志一电子材料 1.054 Journal of Composite Materials 复合材料杂志1.034Journal of the Ceramic Society of Japa n 日本瓷学会杂志1.JOURNAL OF ELECTROCERAMICS 电子瓷杂志0.99ADVANCES IN POLYMER TECHNOLOGY 聚合物技术发展0.979IEEE TRANSACTIONS ON COMPONENTS AND PACKAGING TECHNOLOGIESIEEE 元件及封装技术会刊0.968Journal of Porous Materials 多材料0.959In ternatio nal Journal of Materials Research 材料研究杂志 0.819专业资料IEEE TRANSACTIONS ON SEMICONDUCTOR MANUFACTURINGIEEE 0.957CONSTRUCTION AND BUILDING MATERIALS结构与建筑材料 0.947Journal of Engin eeri ng Materials and Tech no logy-Tra nsact ions of The ASME 工程材料与技术杂志一美国机械工程师学会会刊0.938FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES 工程材料与结构的疲劳与断裂0.934IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITYIEEE 应用超导性会刊 0.919ACI STRUCTURAL JOURNAL美国混凝土学会结构杂志0.895Materials Scie nee and Techn ology 材料科学与技术 0.894Materials and Structures 材料与结构 0.892 Reviews on Adva need Materials Scie nee 先进材料科学评论 0.891 In ternatio nal Journal of Thermophysics热物理学国际杂志 0.889JOURNAL OF ADHESION SCIENCE AND TECHNOLOGY 粘着科学与技术杂志 0.869Journal of Materials Scie nee & Tech no logy 材料科学与技术杂志 0.869High Performa nee Polymers高性能聚合物 0.86BULLETIN OF MATERIALS SCIENCE材料科学公告 0.858Mecha nics of Adva need Materials and Structures 先进材料结构和力学0.857PHYSICA B 物理 B0.822EUROPEAN PHYSICAL JOURNAL-APPLIED PHYSICS 欧洲物理杂志一应用物理 0.822CORROSION 腐蚀 0.821半导体制造会刊JOURNAL OF NONDESTRUCTIVE EVALUATIONMETALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY ANDMATERIALS 冶金和材料会刊 B —制备冶金和材料制备科学 0.798Materials Transactions材料会刊 0.753Aerospace Science and Tech no logy Journal of Energetic Materials Adva need Powder Tech no logy Applied Composite Materials Adva nces in Applied CeramicsMaterials and Manu facturi ng Processes Composite In terfaces 复合材料界面 0.69 JOURNAL OF ADHESION 粘着杂志 0.685INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS 理论物理国际杂志 0.675 JOURNAL OF NEW MATERIALS FOR ELECTROCHEMICAL SYSTEMS 电化学系统新材料杂志0.67Journal of Thermophysics and Heat Tran sfer 热物理与热传递 0.647Materials and Corrosion-Werkstoffe Und Korrosion 材料与腐蚀 0.639 RESEARCH IN NONDESTRUCTIVE EVALUATION无损检测研究 0.630JOURNAL OF COMPUTER-AIDED MATERIALS DESIGN 计算机辅助材料设计杂志 0.605JOURNAL OF REINFORCED PLASTICS AND COMPOSITES 增强塑料和复合材料杂志0.573ACI MATERIALS JOURNAL美国混凝土学会材料杂志0.568无损检测杂志0.808航空科学技术0.74材料与制造工艺 0.706金属学杂志0.723 先进粉末技术0.716 应用复合材料0.712 先进应用瓷0.708SEMICONDUCTORS 半导体0.565FERROELECTRICS 铁电材料0.562INTERNATIONAL JOURNAL OF MODERN PHYSICS B 现代物理国际杂志B0.558 MATERIALS RESEARCH INNOVATIONS 材料研究创新0.54GLASS TECHNOLOGY -PART A 玻璃技术0.529JOURNAL OF MATERIALS IN CIVIL ENGINEERING 土木工程材料杂志0.526NEW DIAMOND AND FRONTIER CARBON TECHNOLOGY 新型金刚和前沿碳技术0.500SCIENCE IN CHINA SERIES E-TECHNOLOGICAL SCIENCES 中国科学E 技术科学0.495 ATOMIZATION AND SPRAYS 雾化和喷涂0.494SYNTHESE 合成0.477HIGH TEMPERATURE 高温0.469Journal of Phase Equilibria and Diffusion 相平衡与扩散0.457INORGANIC MATERIALS 无机材料0.455MECHANICS OF COMPOSITE MATERIALS 复合材料力学0.453BIO-MEDICAL MATERIALS AND ENGINEERING 生物医用材料与工程0.446PHYSICS AND CHEMISTRY OF GLASSES 玻璃物理与化学0.429JOURNAL OF WUHAN UNIVERSITY OF TECHNOLOGY-MATERIALS SCIENCE EDITION理工大学学报-材料科学版0.424ADVANCED COMPOSITE MATERIALS 先进复合材料0.404Journal of Materials En gi neering and Performa nee 材料工程与性能杂志0.403专业资料Solid State Techno logy 固体物理技术0.400FERROELECTRICS LETTERS SECTION 铁电材料快报0.375JOURNAL OF POLYMER MATERIALS 聚合物材料杂志0.373JOURNAL OF INORGANIC MATERIALS 无机材料杂志0.37GLASS SCIENCE AND TECHNOLOGY-GLASTECHNISCHE BERICHTE 玻璃科学与技术0.365POLYMERS & POLYMER COMPOSITES 聚合物与聚合物复合材料0.355Surface Engineering 表面工程0.354RARE METALS 稀有金属0.347HIGH TEMPERATURE MATERIAL PROCESSES 高温材料加工0.34JOURNAL OF TESTING AND EVALUATION 测试及评价杂志0.324AMERICAN CERAMIC SOCIETY BULLETIN 美国瓷学会公告0.324MATERIALS AT HIGH TEMPERATURES 高温材料0.323MAGAZINE OF CONCRETE RESEARCH 混凝土研究杂志0.315SURFACE REVIEW AND LETTERS 表面评论与快报0.309Journal of Ceramic Processing Research 瓷处理研究0.294JSME INTERNATIONAL JOURNAL SERIES A-SOLID MECHANICS AND MATERIAL ENGINEERIN日本机械工程学会国际杂志系列 A —固体力学与材料工程0.291 MATERIALS TECHNOLOGY 材料技术0.288ADVANCED COMPOSITES LETTERS 先进复合材料快报0.27HIGH TEMPERATURE MATERIALS AND PROCESSES 高温材料和加工0.268INTEGRATED FERROELECTRICS 集成铁电材料0.242MATERIALS SCIENCE 材料科学0.226MATERIALS EVALUATION 材料评价0.21POWDER METALLURGY AND METAL CERAMICS 粉末冶金及金属瓷0.201RARE METAL MATERIALS AND ENGINEERING 稀有金属材料与工程0. INTERNATIONAL JOURNAL OF MATERIALS & PRODUCT TECHNOLOGY 材料与生产技术国际杂志0.157METAL SCIENCE AND HEAT TREATMENT 金属科学及热处理0.157JOURNAL OF ADVANCED MATERIALS 先进材料杂志0.14ADVANCED MATERIALS & PROCESSES 先进材料及工艺0.129MATERIALS WORLD 材料世界0.122SCIENCE AND ENGINEERING OF COMPOSITE MATERIALS 复合材料科学与工程0.098 MATERIALS PERFORMANCE 材料性能0.Journal of Materials En gi neering and Performa nee 材料工程与性能杂志0.403专业资料。
冠状动脉内可吸收金属支架的研究进展
冠状动脉内可吸收金属支架的研究进展刘艳青【摘要】冠状动脉内支架植入是目前广泛应用的冠心病治疗手段,但支架内狭窄和晚期血栓形成影响冠状动脉支架远期疗效和安全性,长期应用抗血小板药物所带来的不良反应以及经济上给患者造成的负担,这些都限制了冠状动脉支架的进一步应用.生物可吸收金属支架具有与裸金属支架相当的支撑力及良好生物相容性,可有效降低再狭窄率和血栓形成,临床应用前景十分广阔.%Currently, coronary stents are widely used in the treatment of coronary heart disease. However, the major limitations of stents are in-stent restenosis and late thrombosis. These , which effect the long-term efficiency and safety of the stents. Moreover, prolonged antiplatelet therapy can have many adverse effects and economic burdens for a patient , and these factors limit the further development of stents. The use of a bioabsorbable metal stent which could provide the same mechanical properties compared to the bare metal stent and but with good bio-compatibility, could reduce the rate of restenosis and thrombosis. It owns a bright future in clinical coronary stents.【期刊名称】《心血管病学进展》【年(卷),期】2012(033)005【总页数】3页(P638-640)【关键词】可吸收支架;金属支架;再狭窄;血栓形成【作者】刘艳青【作者单位】昆明医科大学第一附属医院心内科,云南昆明 650032【正文语种】中文【中图分类】R815药物洗脱支架(DES)的应用是冠心病介入治疗史上的第二次革命,与金属裸支架(BMS)相比,DES显著降低冠状动脉介入治疗术(PCI)后再狭窄的发生率。
ESI各学科期刊名单列表(根据2017年公布的影响因子排序)
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MATERIALS1996-19448,140 ACS BIOMATER SCI ENG2373-9878635 APPL SURF SCI0169-433261,457 J COMPOS CONSTR1090-02683,797 J BIOMED MATER RES A1549-329615,670 BEILSTEIN J NANOTECH2190-42862,588 J BIOMED MATER RES B1552-49737,700 HYDROMETALLURGY0304-386X8,433 INT J FATIGUE0142-11239,981 MECH MATER0167-66366,151 BIOMED MATER1748-60412,508 CHEMNANOMAT2199-692X282 J ALLOY COMPD0925-838868,732 MACROMOL MATER ENG1438-74924,165 PROG ORG COAT0300-94408,284BIOINTERPHASES1934-86301,390 NDT&E INT0963-86954,128 J AM CERAM SOC0002-782039,326 OPT MATER EXPRESS2159-39303,652 CERAM INT0272-884228,698 WEAR0043-164822,165 MATER CHARACT1044-58037,300 INTERMETALLICS0966-97958,104 PARTICUOLOGY1674-20012,171 POLYM TEST0142-94185,622 J MATER SCI TECHNOL1005-03024,026 MRS COMMUN2159-6859491 J INTEL MAT SYST STR1045-389X5,734 MATER STRUCT1359-59976,903 PROG NAT SCI-MATER1002-00712,678 SURF COAT TECH0257-897232,512 J MATER SCI0022-246141,032 MATER SCI ENG B-ADV0921-510710,163 J MATER SCI-MATER M0957-453010,202 MATER LETT0167-577X37,918 COMP MATER SCI0927-025616,271 INT J ADHES ADHES0143-74964,137 MATER RES BULL0025-540817,881 J NANOMATER1687-41107,164 INT J REFRACT MET H0263-43684,252 MODEL SIMUL MATER SC0965-03933,740 MAT SCI SEMICON PROC1369-80014,978 MATER CHEM PHYS0254-058423,461 J SANDW STRUCT MATER1099-6362639 OPT MATER0925-346710,163 J NANOPART RES1388-076411,876 ADV ENG MATER1438-16565,765 MATER EXPRESS2158-5849571 GOLD BULL0017-15571,320 INT J APPL GLASS SCI2041-1286506 SCI TECHNOL WELD JOI1362-17182,513 METALL MATER TRANS A1073-562322,989 POLYM COMPOSITE0272-83975,702DIAM RELAT MATER0925-96357,790 COATINGS2079-6412315 GRANUL MATTER1434-50211,564 MICROSC MICROANAL1431-92763,278 JOM-US1047-48385,470 FATIGUE FRACT ENG M8756-758X3,766 METALS-BASEL2075-4701566 REV ADV MATER SCI1606-51311,262 INT J MECH MATER DES1569-1713451 WELD J0043-22962,684 NANOTECHNOL REV2191-9089283 INT J MATER FORM1960-62061,021 MATER MANUF PROCESS1042-69143,554 METALL MATER TRANS B1073-56156,042 J MATER 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材料科学英文研究计划
材料科学英文研究计划English: In our research project on materials science, we aim to investigate the properties and applications of advanced materials such as nanomaterials, biomaterials, and polymers. Our research will focus on developing new materials with improved mechanical, electrical, and thermal properties for various industries such as aerospace, automotive, and electronics. We plan to use cutting-edge analytical techniques such as electron microscopy, X-ray diffraction, and spectroscopy to characterize the structure and properties of the materials. Additionally, we aim to explore the utilization of sustainable and eco-friendly materials to address environmental concerns and promote the circular economy. Through collaborations with industry partners, our research will also have a practical application in real-world settings, contributing to the advancement of materials science and technology.中文翻译: 在我们的材料科学研究项目中,我们旨在研究先进材料如纳米材料、生物材料和聚合物的性质和应用。
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Course Introduction and Outline
Biomaterials: Designs and Applications offers a comprehensive review of all the major biomaterials in this rapidly growing field. The objective of this course is gain an appreciation for the design and application of biomaterials in modern medical science. This course covers materials surface modification, biointerface reaction of biomaterials, biomaterial degradation and special functional biomaterials. Case studies and in-class scenarios are frequently used to highlight the current opportunities and challenges of using biomaterials in medicine.
1. Contacts
Tel: 34205822
Email: jinyeang@
Office: Minhang Campus:Biology and Pharmacy Research Buildings 2-313
2. References
∙∙阮建明生物材料学科学出版社2009
∙崔福斋, 冯庆玲. 生物材料学. 北京:科学出版社, 1996.
∙Temenoff, Johnna S Biomaterials : The Intersection of Biology and Materials Science, Prentice Hall, Inc.,2008
∙Park, Biomaterials: An Introduction, Plenum Publishing Corp.,2008
3. Grading
∙Class participation: 30%
∙Mind-Exam: 20%
∙Homework and proposal: 20%
∙Final Exam: 30%
4. Relevant courses & Pre-required knowledge
∙Relevant Courses: Fundamental Materials Sciences, Organic Chemistry, Biomaterials ∙Required Knowledge: College level organic chemistry, materials science, and cell biology 5. Objectives:
∙Provide graduate-level foundation on contemporary biomaterial principles.
∙Discuss concepts of surfaces & interfaces in biomaterial function.
∙Introduce biomimetic & rational design approaches to biomaterial engineering.
∙Discuss elements controlling biological responses to materials.
∙Special Functional materials in biomedical engineering application
6. Course Syllabus
(1) Materials surface Modification (6 wk)
∙Surface structure and properties of Biomaterials.
∙Sureface modification methods.
∙Biomimetic Design of Biomaterials surface; biomembrane engineering (2) Biointerface reaction of Biomaterials (8 wk)
∙Protein Interactions with Biomaterials
∙Blood Interactions with Biomaterials and Cruor
∙Inflammation and Infection
∙Biomaterials Surface Structure and Tumorigenesis
Mid-Exam
(3) Biomaterial Degradation (6 wk)
∙Biological Degradation.
∙Chemical Synthetic Biodegradable Polymers.
∙Biological Synthetic Biodegradable Polymers.
∙Natural, Semisynthetic Biodegradable Polymers.
(4) Special Functional Biomaterials (3 wk)
∙Neural Functional Coating Materials: Conductiong Polymers.
∙Intelligent Biomaterials.
∙Cardiovascular Materials.
∙Clinical Diagnostic Materials.
(5) Student Presentations and Discussions (6 wk)
(6) Final Exam (2 wk).。